1 State Key Laboratory of Plant Genomics, Institute of Microbiology, Chinese Academy of Sciences , Beijing , People's Republic of China.
2 State Key Laboratory of Crop Biology, Shandong Key Laboratory of Crop Biology, Shandong Agricultural University , Taian, Shandong , People's Republic of China.
Philos Trans R Soc Lond B Biol Sci. 2019 Mar 4;374(1767):20180313. doi: 10.1098/rstb.2018.0313.
Whiteflies, Bemisia tabaci (Hemiptera), are pests causing economic damage to many crops, capable of transmitting hundreds of plant vector-borne viruses. They are believed to secrete salivary protein effectors that can improve vector colonization and reproductive fitness in host plants. However, little is known about effector biology and the precise mechanism of action of whitefly effectors. Here, we report a functional screening of B. tabaci salivary effector proteins (Bsp) capable of modulating plant innate immunity triggered by plant endogenous pattern peptide Pep1. Four immunity suppressors and two elicitors were identified. Bsp9, the most effective immunity suppressor, was further identified to directly interact with an immunity regulator WRKY33. We provide evidence that Bsp9 may suppress plant immune signalling by interfering with the interaction between WRKY33 and a central regulator in the MAPK cascade. The interference by Bsp9 therefore reduces plant resistance to whitefly by inhibiting activation of WRKY33-regulated immunity-related genes. Further detailed analysis based on transgenic plants found that whitefly effector Bsp9 could promote whitefly preference and performance, increasing virus transmission. This study enriches our knowledge on insect effector biology. This article is part of the theme issue 'Biotic signalling sheds light on smart pest management'.
烟粉虱,Bemisia tabaci(半翅目),是对许多作物造成经济损害的害虫,能够传播数百种植物媒介传播的病毒。据信,它们会分泌唾液蛋白效应子,从而改善宿主植物中的媒介定植和生殖适应性。然而,关于效应子生物学和烟粉虱效应子的确切作用机制,我们知之甚少。在这里,我们报告了一项针对能够调节植物内源性模式肽 Pep1 触发的先天免疫的烟粉虱唾液效应蛋白(Bsp)的功能筛选。鉴定出了四种免疫抑制剂和两种激发剂。最有效的免疫抑制剂 Bsp9 进一步被鉴定为能够直接与免疫调节剂 WRKY33 相互作用。我们提供的证据表明,Bsp9 可能通过干扰 WRKY33 与 MAPK 级联中的中央调节剂之间的相互作用来抑制植物免疫信号转导。因此,Bsp9 的干扰通过抑制 WRKY33 调控的免疫相关基因的激活来降低植物对烟粉虱的抗性。基于转基因植物的进一步详细分析发现,烟粉虱效应子 Bsp9 可以促进烟粉虱的偏好和表现,增加病毒传播。这项研究丰富了我们对昆虫效应子生物学的认识。本文是主题为“生物信号揭示智能害虫管理”的特刊的一部分。